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CO oxidation by oxygen of the catalyst and by gas-phase oxygen over (0.5–15)%CoO/ZrO2
Il’ichev A.N., Fattakhova Z.T., Shashkin D.P., Matyshak V.A., Korchak V.N.
Spectrokinetic study of the mechanism of NOx reduction with propylene over ZrO2 in excess oxygen
Matyshak V.A., Il’ichev A.N., Sil’chenkova O.N., Sadykov V.A., Korchak V.N.
Kinetics and mechanism of the production of higher olefins from stearic acid in the presence of an alumina-supported nickel sulfide catalyst
Katsman E.A., Danyushevsky V.Y., Kuznetsov P.S., Shamsiev R.S., Berenblyum A.S.
Role of anionic vacancies in lithium fluoride in the catalytic oxidation of carbon monoxide on the surface of the Au/LiF/Mo(110) system
Silaev I.V., Khubezhov S.A., Tvauri I.V., Grigorkina G.S., Kaloeva A.G., Ashkhotov O.G., Sekiba D., Ogura S., Fukutani K., Magkoev T.T.
Initial Stages of Deuterium Adsorption on Gold Nanoparticles
Gatin A.K., Grishin M.V., Dokhlikova N.V., Kolchenko N.N., Sarvadii S.Y., Shub B.R.
On the properties of surface complexes formed upon the adsorption of NOx, C3H6, and their mixtures with oxygen on ZrO2 according to EPR, TPD, and fourier transform IR spectroscopy data
Matyshak V.A., Il’ichev A.N., Sil’chenkova O.N., Sadykov V.A., Korchaka V.N.
Synthesis of Nanostructured Carbon on Ni Deposited on Mesoporous Aluminum, and Titanium Oxides. Investigation of Biocatalytic Properties of Lipase Adsorbed on Carbon–Mineral Supports
Rudina N.A., Kovalenko G.A., Perminova L.V., Chuenko T.V.
Synthesis of nanostructured carbon on Ni catalysts supported on mesoporous silica, preparation of carbon-containing adsorbents, and preparation and study of lipase-active biocatalysts
Kovalenko G.A., Chuenko T.V., Perminova L.V., Rudina N.A.
IR-Spectroscopic Study of Adsorption of Aminoazoles on Oxide Catalysts of Biginelli Reaction
Koryakova O.V., Titova Y.A., Murashkevich A.N., Fedorova O.V.
Quantum chemical simulation of propylene oxidation on Ag20
Polynskaya Y.G., Pichugina D.A., Beletskaya A.V., Kuz’menko N.E.
The Effect of the Copper Oxide Content and Support Structure in (0.5−15%)СuО/ZrO2 Catalysts on Their Activity in the CO Oxidation Reaction with Oxygen in an Excess of Hydrogen
Il’ichev A.N., Bykhovskii M.Y., Fattakhova Z.T., Shashkin D.P., Matyshak V.A., Korchak V.N.
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